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AVHRR GAC SST Reanalysis Version 1 (RAN1)

机译:AVHRR GAC SST重新分析版本1(RAN1)

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In response to its users’ needs, the National Oceanic and Atmospheric Administration (NOAA) initiated reanalysis (RAN) of the Advanced Very High Resolution Radiometer (AVHRR) Global Area Coverage (GAC; 4 km) sea surface temperature (SST) data employing its Advanced Clear Sky Processor for Oceans (ACSPO) retrieval system. Initially, AVHRR/3 data from five NOAA and two Metop satellites from 2002 to 2015 have been reprocessed. The derived SSTs have been matched up with two reference SSTs—the quality controlled in situ SSTs from the NOAA in situ Quality Monitor ( i Quam) and the Canadian Meteorological Centre (CMC) L4 SST analysis—and analyzed in the NOAA SST Quality Monitor (SQUAM) online system. The corresponding clear-sky ocean brightness temperatures (BT) in AVHRR bands 3b, 4 and 5 (centered at 3.7, 11, and 12 μm, respectively) have been compared with the Community Radiative Transfer Model simulations in another NOAA online system, Monitoring of Infrared Clear-sky Radiances over Ocean for SST (MICROS). For some AVHRRs, the time series of “AVHRR minus reference” SSTs and “observed minus model” BTs are unstable and inconsistent, with artifacts in the SSTs and BTs strongly correlated. In the official “Reanalysis version 1” (RAN1), data from only five platforms—two midmorning (NOAA-17 and Metop-A) and three afternoon (NOAA-16, -18 and -19)—were included during the most stable periods of their operations. The stability of the SST time series was further improved using variable regression SST coefficients, similarly to how it was done in the NOAA/NASA Pathfinder version 5.2 (PFV5.2) dataset. For data assimilation applications, especially those blending satellite and in situ SSTs, we recommend bias-correcting the RAN1 SSTs using the newly developed sensor-specific error statistics (SSES), which are reported in the product files. Relative performance of RAN1 and PFV5.2 SSTs is discussed. Work is underway to improve the calibration of AVHRR/3s and extend RAN time series, initially back to the mid-1990s and later to the early 1980s.
机译:为了响应用户的需求,美国国家海洋与大气管理局(NOAA)对其先进的超高分辨率辐射计(AVHRR)全球区域覆盖(GAC; 4 km)海面温度(SST)数据进行了重新分析(RAN)。先进的海洋晴空处理器(ACSPO)检索系统。最初,对2002年至2015年的5颗NOAA和2颗Metop卫星的AVHRR / 3数据进行了重新处理。派生的SST已与两个参考SST相匹配-来自NOAA现场质量监控器(i Quam)和加拿大气象中心(CMC)L4 SST分析的质量控制的现场SST-并在NOAA SST质量监控器中进行了分析( SQUAM)在线系统。已将AVHRR 3b,4和5波段(分别以3.7、11和12μm为中心)中相应的晴空海洋亮度温度(BT)与另一个NOAA在线系统监测中的社区辐射传输模型模拟进行了比较SST(MICROS)在海洋上的红外晴空辐射。对于某些AVHRR,“ AVHRR减参考” SST和“观察到的减模型” BT的时间序列不稳定且不一致,并且SST和BT中的伪影高度相关。在正式的“重新分析版本1”(RAN1)中,仅在最稳定的时间段中包含了来自五个平台的数据-两个上午(NOAA-17和Metop-A)和三个下午(NOAA-16,-18和-19)。他们的经营时期。使用变量回归SST系数可以进一步改善SST时间序列的稳定性,这与在NOAA / NASA探路者5.2版(PFV5.2)数据集中所做的类似。对于数据同化应用程序,尤其是那些卫星和原位SST混合的应用程序,我们建议使用新开发的传感器特定错误统计信息(SSES)对RAN1 SST进行偏差校正,这些数据在产品文件中进行了报告。讨论了RAN1和PFV5.2 SST的相对性能。改善AVHRR / 3的校准并延长RAN时间序列的工作正在进行中,该工作最初可以追溯到1990年代中期,然后到1980年代初期。

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